Technical Field
[0001] The present invention concerns an adjustable support head for optical or video/photographic
equipment having the features described in the pre-characterising clause of the main
claim.
Technological Background
[0002] Adjustable support heads of the type indicated are typically used in connection with
stands, tripods or other supports known within the technical sector in question to
support optical or video/photographic equipment in one or more pre-selected spatial
positions.
[0004] These heads are typically equipped with one or more articulated joints, for example
of the spherical or cylindrical type, to vary the reciprocal position of the equipment
supported by the head in relation to the support on which the head is fixed.
[0005] Generally, traditional support heads are equipped with special locking means that
can be selectively activated to lock the joint in a desired position and, respectively,
to release the joint so as to allow the equipment to be re-positioned.
[0006] In one of its more common forms, the locking means comprise a pin element, engaged
by screwing into one of the joint elements and capable of being moved against another
joint element so as to lock its relative movement owing to the friction exerted upon
it.
[0007] Heads of this type have one serious limitation, however, due to the fact that, when
the locking means are released, the equipment is completely free to move in relation
to the support. This fact, particularly in the case of heads with a ball element,
can be the cause of undesirable and sudden imbalances of the equipment supported by
the joint with the consequent risk of the equipment and the entire support device
falling and being damaged.
[0008] The manoeuvre to release the head must therefore be performed using both hands, one
to operate the locking means and the other to provide adequate support for the equipment.
[0009] In order to overcome this drawback, support heads have been devised, also by the
Applicant, that comprise friction means, arranged always to maintain a minimum level
of friction between the elements of the joint, so as to prevent sudden and accidental
movements on releasing the locking means. The friction means usually comprise one
or more slides, produced of an appropriate material, mounted on a first joint element
and loaded against the surface of a second joint element.
[0010] The optimum level of friction required between the joint elements is clearly dependent
on the weight and size of the equipment supported, and so the force with which the
slide is loaded against the second joint element is adjustable by means of a knob
or control lever, separate and distinct from the control knob or lever of the locking
means.
[0011] This, however, involves an undesirable complication of the shape of the support head,
its dimensions and, above all, its internal mechanisms.
Description of the invention
[0012] The problem that lies at the heart of the present invention is to make an adjustable
support head for optical or video/photographic equipment which is structurally and
operationally designed to overcome the above-mentioned limitations with reference
to the said known art.
[0013] This problem is solved by the present invention by means of an adjustable support
head produced according to the claims below.
Brief description of the drawings
[0014] Other features and advantages of the present invention will become clear from the
following detailed description of some of its preferred embodiments which are shown
by way of non-limiting examples in the appended drawings, in which:
- Figure 1 is a perspective overall view of a first embodiment of an adjustable support
head for optical or video/photographic equipment produced according to the present
invention;
- Figure 2 is a front elevation of the support head shown in Figure 1;
- Figure 3 is a side elevation of the support head shown in Figure 1;
- Figure 4 is a cross-section along line IV-IV in Figure 3, on an enlarged scale;
- Figure 5 is a cross-section along line V-V in Figure 2, on an enlarged scale;
- Figure 6 is a perspective overall view of a second embodiment of an adjustable support
head for optical or video/photographic equipment produced according to the present
invention;
- Figure 7 is a cross-section of the support head shown in Figure 6;
- Figure 8 is a perspective overall view of a third embodiment of an adjustable support
head for optical or video/photographic equipment produced according to the present
invention;
- Figure 9 is a cross-section of the support head shown in Figure 8.
Preferred embodiment of the invention
[0015] Referring initially to Figures 1 to 5, 1 shows as a whole an adjustable support head
for optical or video/photographic equipment produced according to the present invention.
[0016] The head 1 comprises a base 2, a body 3 connected so as to rotate on the base 2,
as well as an attachment plate 4 connected to the body 3 by means of an articulated
joint 5.
[0017] The base 2 has a substantially planar surface 6 to rest the head 1 on a support,
such as a stand or tripod, which is conventional and not shown in the Figure. A threaded
hole 7 is also open at the surface 6 to allow engagement with a corresponding threaded
pin located at the top of the support and thus allow the firm connection between the
latter and the head 1. The axis X of the threaded hole 7 coincides with the axis of
symmetry of the base 2 and is perpendicular to the contact surface 6.
[0018] On the side remote from the contact surface 6, a circumferential groove 8 is produced,
in which is housed, in sliding engagement, a foot 9 of the body 3.
[0019] A plate 10 is removably fixed by means of screws 11 to the base 2 in order to hold
the foot 9 in the groove 8, so that the body 3 is secured to the base 2 and able to
rotate freely about the axis X. A washer 12, produced of a material with a low friction
coefficient, lies at the bottom of the groove to allow the foot 9 to slide easily.
[0020] Stop means 13 are also mounted on the body 3 to lock the body 3 in relation to the
base 2 in the desired angular position. The stop means 13 may be of any type known
within the sector and, in this particular case, comprise a threaded pin 14 selectively
movable away from and towards the plate 10 by means of a knob 15, which is preferably
loaded by meshing with the head 14a, against the action of the spring 15a to enable
it, if necessary, to be angularly repositioned.
[0021] To make it easier to adjust the body 3 in relation to the base 2 in a pre-defined
angular position, the outer surface of the base 2 is also advantageously marked with
a graduated scale 16.
[0022] The body 3 is generally shell-shaped with a cavity 17 inside it forming a housing
for a spherical ball element 18 to which the connection plate 4 is integrally connected
by means of a stem 19.
[0023] The body 3, having the cavity 17 within, and the ball element 18 constitute the first
and second joint element respectively of the joint 5, which in the preferred case
described here, is of the spherical type. It is understood that the joint 5 could
similarly be of a different type, for example a cylindrical joint.
[0024] The connection plate 4 is freely adjustable in relation to the body 3 within the
limits defined by an opening 20, produced in the body 3 on the opposite side to the
base 2, which is passed through by the stem 19.
[0025] The connection plate 4 also has a known connection 21 for connection to the head
1 of an optical or video/photographic device, not shown.
[0026] The connection 21, shown in this embodiment, comprises a pin 22 engaged by screwing
in a hole 23 open on the connection plate 4 and extending axially along the stem 19
and radially through the ball element 18. The pin 22 is held in position by a nut
24 and has a threaded head 22a capable of engaging in a corresponding threaded hole
on the optical or video/photographic equipment to be supported.
[0027] The head 1 also comprises locking means 25, arranged to prevent the ball element
18 from sliding freely inside the cavity 17, and consequently to lock the mutual position
between the body 3 and the connection plate 4.
[0028] The locking means 25 include a clamping element 26 which is selectively movable in
a direction Y, radial in relation to the ball element 18, between a first non-operating
position in which the clamping element 26 is distanced from the ball element 18 and
a second operating position in which it is clamped against the surface of the ball
element 18, so as to lock the ball element 18 in relation to the body 3.
[0029] The movement of the clamping element 26 in the direction Y is controlled by a knob
30.
[0030] The clamping element 26 preferably comprises a cup-shaped formation 27 designed to
come into contact with the ball element 18 and a control pin 28 that comes into contact
with the cup-shaped formation 27 on the opposite side to the ball element 18.
[0031] The cup-shaped formation 27 has a concavity facing towards the ball element 18, and
its free edges, designed to come into contact with the ball element 18, are shaped
so as to mate with spherical surface thereof.
[0032] Preferably, in order firmly to lock the joint 5, the cup-shaped formation 27 is produced
of a metal material, such as aluminium.
[0033] The control pin 28 is fitted with a polygonal-section head 29, which is engaged in
a seat 31, having the same cross-section, defined on the knob 30 and is held therein,
with the possibility of limited axial movement, by a screw 32. A reinforcement plate
33 is also interposed between the control pin 28 and the cup-shaped formation 27.
[0034] The head 1 also comprises adjustable-action friction means 35 capable of stopping
the ball element 18 from sliding in relation to the body 3 when the clamping element
26 is positioned distant from the ball element 18. The friction means 35 comprise
a ring-shaped slide 36 loaded against the spherical surface of the ball element 18
by the action of a resilient means, such as a Belleville washer 37.
[0035] According to a first aspect of the present invention, the Belleville washer 37 is
interposed between the slide 36 and the clamping element 26, so that the intensity
of the braking action exerted by the slide 36 on the ball element 18 is adjusted by
moving the clamping element 26 between its first non-operating position and its second
operating position.
[0036] In particular and advantageously, the Belleville washer 37 and the slide 36 are housed
in the cup-shaped formation 27 of the clamping element 26.
[0037] Preferably, the slide 36 is produced of a material that has a low friction coefficient,
such as a polytetrafluoroethylene (PTFE)-based or PTFE-loaded polymer material.
[0038] The head 1 also comprises travel-limiting means 40, capable of coming into contact
with the clamping element 26 in its movement away from the ball element 18, thus in
fact defining the first non-operating position thereof.
[0039] For this purpose, the travel limiting means 40 comprise a contact element 41 interposed
between the knob 30 and the cup-shaped formation 27. Advantageously, the contact element
41 is of a similar shape to the cup-shaped formation 27, so as to accommodate it and
guide it within itself in its axial movement away from and towards the ball element
18. Apart from the similarity of shape, the connection between the contact element
41 and the cup-shaped formation 27 is produced by a pin 42 which prevents relative
rotation between the two component parts.
[0040] In its middle area, the contact element 41 has a threaded hole 43 in which the threaded
shank of the control pin 28 is engaged by screwing.
[0041] The contact element 41 is preferably movable in the axial direction Y by means of
a ring nut 44, engaged by screwing onto the body 3, and loaded with one of its ends
against a flange 45 extending from an edge of the contact element 41. Relative rotation
between the contact element 41 and the body 3 is prevented by a pin 46 which, however,
is accommodated in a seat 47 which is elongated in direction Y and produced in the
flange 45, so as to enable a limited axial translation of the contact element 41 in
relation to the body 3.
[0042] The ring nut 44 is also restrained, together with the knob 30, with the possibility
of relative free rotation about the axis Y, by a setscrew 48 engaged in a groove 49
running circumferentially round a collar 30a extending axially from the knob 30 so
as to be interposed between the ring nut 44 and the contact element 41. A sealing
ring 50 is also advantageously arranged between the contact element 41 and the collar
30a.
[0043] Preferably, the ring nut 44 is housed in a shoulder formed between the knob 30 and
the collar 30a.
[0044] In a variation of the present invention, the travel limiting means comprise a screw
engaged by screwing along the axis Y into the knob 30 and capable of coming into contact
with the head 29 of the control pin 28.
[0045] The positioning of the connection plate 4 in relation to the body 3 is achieved by
having the clamping element 26 in the first non-operating position, i.e. in the position
that is distant from the ball element 18.
[0046] In this configuration, owing to the joint 5, the connection plate 4 can easily be
moved by the operator in relation to the body 3, the only resistance to be overcome
being the braking action exerted by the friction means 35, via the friction between
the slide 36 against the ball element 18.
[0047] Once the desired adjustment is achieved, the joint 5 is locked in position by acting
on the locking means 25 by means of the knob 30.
[0048] The rotation of the knob 30, which is free in relation to the ring nut 44 and the
body 3, results in the rotation of the control pin 28 and its consequent translation
along the axis Y towards the ball element 18, caused by its screwing into the hole
46 produced in the contact element 41.
[0049] The axial movement of the control pin 28 causes the same movement of the cup-shaped
formation 27 towards the ball element 18. This movement is guided inside the positioning
element 41, which by contrast stays in a fixed position, and involves the compression
of the Belleville washer 37 and thus an increase in the braking action exerted by
the slide 36 on the ball element 18.
[0050] When the cup-shaped formation 27 comes into contact with the ball element 18 (second
operating position), the joint 5 is locked in position. It will be appreciated that
no component visible from the outside undergoes axial movement during this stage.
[0051] The joint 5 is released by rotating the knob 30 in the opposite direction which moves
the control pin 28, and also the cup-shaped formation 27, loaded by the Belleville
washer 37, away from the ball element 18.
[0052] As soon as the cup-shaped formation detaches itself from the ball element 18, the
free movement of the ball element 18 inside the cavity 17 is advantageously braked
by the slide 36 which, in this position, exerts its maximum friction. As the knob
30 is gradually rotated, the distance of the cup-shaped formation 27 from the ball
element 18 increases and consequently reduces the friction exerted by the slide 36
on the ball element 18 which can then easily be moved by the operator.
[0053] In this way sudden and undesirable falling of the equipment supported by the head
1 is avoided.
[0054] The movement of the cup-shaped formation 27 is stopped by the contact element 41
which acts as an end stop and defines the first non-operating position.
[0055] Advantageously, the axial position of the contact element 41 can be adjusted by turning
the ring nut 44. In fact, rotation of the latter causes it to move axially to engage
by screwing with the body 3 and consequently, thanks to its thrust on the flange 45,
also causes the axial movement of the contact element 41. By appropriately adjusting
the axial position of the contact element 41, it is possible to set a minimum desired
level of friction on the joint 5.
[0056] Note also that, thanks to the engagement of the setscrew 48 in the groove 49, the
knob 30 is drawn along axially by the ring nut 44 so as to maintain continuous contact
between the knob 30 and the ring nut 44.
[0057] A second embodiment of a support head produced according to the invention is shown
in Figures 6 and 7 and indicated as a whole by 100 in Figures 6 and 7. Parts similar
to the head described in the previous embodiment bear the same reference numerals.
[0058] The head 100 differs from the head 1 in that the contact element 41 cannot be moved
in the direction Y, but is instead held in a fixed axial position in relation to the
body 3, tightly against a flange 27a, extended perimetrally by the cup-shaped element
27, by a ring nut 101 screwed onto the body 3 and secured by a setscrew 102.
[0059] The ring nut 101 is fitted onto the collar 30a of the knob 30 which is secured to
prevent it from sliding off the body 3 by a resilient (Seeger type) locking ring inserted
into a groove in the collar 30a and fitted over the ring nut 101.
[0060] The travel limiting means of the head 100 also comprise, in addition to the fixed
contact element 41, a stop pin 104 engaged by screwing onto the knob 30 in the direction
Y and capable of axially coming into contact with the head 29 of the control pin 28
in its movement away from the spherical ball element 18.
[0061] The axial position of the stop pin 104 can be adjusted by screwing it onto the knob
30, by directly turning the head 105 of the pin, which is appropriately projecting
in relation to the body of the knob 30.
[0062] The operation of the head 100 is substantially similar to that of the head 1 described
in the previous embodiment, the difference being that the minimum level of friction
exerted by the slide 36 on the ball element 18 is adjusted by positioning the stop
pin 104 and not by operating the contact element 41. The latter, by contrast, advantageously
serves as a final end stop for the axial movement of the clamping element, should
the stop pin 104 be too loose or completely removed.
[0063] The support head 100 also differs from the head 1 in that it is cheaper to produce.
[0064] Figures 8 and 9 show a third embodiment of the support head according to the present
invention. The head is indicated as a whole by 200 while component parts similar to
those shown in the embodiments of heads described previously bear the same reference
numerals.
[0065] The head 200 differs from the heads 1 and 100 in that it does not offer the possibility
of adjustment of the minimum level of friction of the friction means.
[0066] In the head 200, the contact element 41 is held in a fixed position in relation to
the body 3 by a resilient ring 201 engaged in a circumferential groove produced in
the body 3 which holds the contact element 41 against the flange 27a of the cup-shaped
formation 27.
[0067] Furthermore, the resilient means, instead of being a Belleville washer, are in the
form of a cheaper spring washer 202 and the control pin 28 is fixed to the knob 30
by screwing. In this case, a rotation of the knob 30 will result in a similar axial
movement thereof.
[0068] The manufacture of the head 200 will be simpler and cheaper than that of the heads
described in the previous embodiments.
[0069] The present invention thus solves the above-described problem regarding the cited
known art, while at the same time offering many other advantages, including that of
providing a very compact adjustable support head, with one control that adjusts both
the friction action and the locking of the joint. Furthermore, the adjustment of the
minimum level of friction, in the embodiments that offer this option, can easily be
achieved without the need for special devices.
[0070] Another advantage lies in the fact that the friction and locking means are separate,
enabling the most suitable material with which to enter into contact with the spherical
ball element to be chosen for each one of them.
1. An adjustable support (1) head for optical or video/photographic equipment, comprising:
- a joint (5) including a first (3) and a second joint element (18);
- a body (3) defining the said first joint element;
- a connection plate (4) for the said optical or video/photographic equipment, connected
to the said second joint element, so as to enable the said connection plate to be
freely adjustable in relation to the said body;
- locking means (25) mounted on the said body and including a clamping element (26)
that can be selectively moved between a first non-operating position in which the
clamping element is distanced from the said second joint element and a second operating
position in which the clamping element is in contact with the said second joint element
so as to lock the said second joint element in a desired position in relation to the
said first joint element;
- adjustable friction means (35) mounted on the said body (3) and including at least
one slide (36) placed in contact with the said second joint element (18) so as to
adjust the sliding of the said second joint element in relation to the said first
joint element;
wherein the said friction means comprise resilient means (37) loading said at least
one slide against said second joint element (18) and interposed between the said clamping
element (26) and the said at least one slide (36) to adjust the said friction means
by means of the said movement of the said clamping element between the said first
non-operating position and the said second operating position and
characterized in that said resilient means and the said slide are housed and guided inside the said clamping
element.
2. A support head according to claim 1, wherein the said joint is a ball joint and the
said first joint element (3) comprises a spherical seat (17) to house a spherical
ball element (18) forming the said second joint element.
3. A support head according to any of the preceding claims, wherein the said clamping
element comprises, at one of its ends near the said second joint element, a cup-shaped
formation (27) in which are housed and guided the said resilient means and the said
slide.
4. A support head according to any of the preceding claims, wherein the said slide is
produced of a material that has a low friction coefficient.
5. A support head according to claim 4, wherein the said slide is produced of a PTFE-based
or PTFE-containing polymer material.
6. A support head according to any of the preceding claims, wherein the said clamping
element, at least on one surface of contact with the said second joint element, is
made of aluminium.
7. A support head according to any of the preceding claims, wherein the said clamping
element (26) is engaged with the possibility of relative axial movement, in a knob
(30) mounted on the said body in order to rotate freely in relation thereto, so as
to move the said clamping element between the said first and second position by rotating
the said knob.
8. A support head according to any of the preceding claims, which has means (4) of limiting
the travel of the said clamping element comprising a contact element (41) capable
of coming into contact with the said clamping element, so as to define the said first
non-operating position.
9. A support head according to claim 8, wherein the said contact element (41) has a shape
similar to a cup-shaped formation (27) of the clamping element (26) capable of coming
into contact with the said second joint element so that the said the said cup formation,
during its movement between the said first and said second position, is accommodated
and guided inside the said contact element.
10. A support head according to claim 9, wherein the said contact element has a hole (43)
passed through by a control pin (28) of the said clamping element, capable of moving
the said cup formation (27) between the said first and second position.
11. A support head according to claims 7 and 10, wherein the said control pin is engaged
by screwing in the said hole and is engaged in the said knob so that a rotation of
the said knob corresponds to a movement of the said control pin in the direction defined
by the said first and second position.
12. A support head according to any of claims 8 to 11, wherein the position of the said
contact element in the direction defined by the said first and second position is
adjustable.
13. A support head according to claim 12, wherein the said position of the said contact
element can be moved by means of a ring nut (44) engaged by screwing onto the said
first joint element.
14. A support head according to claim 13, wherein the said ring nut is restrained, with
the possibility of relative free rotation, on the said knob.
15. A support head according to any of claims 8 to 11, wherein the said contact element
is fixed in relation to the said first joint element and the said travel limiting
means comprise a stop pin (104) engaged on the said knob and movable in relation thereto
to come into contact with the said control pin (28) in a desired position between
the said first and second position.
16. A support head according to claim 15, wherein the said stop pin is engaged by screwing
onto the said knob in the direction defined by the said first and second position.
1. Einstellbarer Stützkopf (1) für eine optische oder eine Video-/photographische Ausrüstung,
umfassend:
- ein Gelenk (5) mit einem ersten (3) und einem zweiten Gelenkelement (18);
- einen das erste Gelenkelement definierenden Körper (3);
- eine Verbindungsplatte (4) für die optische oder die Video-/photographische Ausrüstung,
verbunden mit dem zweiten Gelenkelement derart, dass die Verbindungsplatte in Bezug
auf den Körper frei einstellbar ist;
- eine Feststelleinrichtung (25), die an dem Körper gelagert ist und ein Klemmelement
(26) aufweist, welches selektiv bewegt werden kann zwischen einer ersten Ruhestellung,
in der das Klemmelement von dem zweiten Gelenkelement beabstandet ist, und einer zweiten
Arbeitsstellung, in der das Klemmelement in Berührung mit dem zweiten Gelenkelement
steht, um das zweite Gelenkelement in einer gewünschten Stellung bezüglich des ersten
Gelenkelements festzustellen;
- eine einstellbare Reibungseinrichtung (35), die an dem Körper (3) gelagert ist und
mindestens ein in Berührung mit dem zweiten Gelenkelement (18) stehendes Gleitstück
(36) aufweist, um das Gleiten des zweiten Gelenkelements in Bezug auf das erste Gelenkelement
einzustellen;
wobei die Reibungseinrichtung Federmittel (37) aufweist, welche das mindestens eine
Gleitstück gegen das zweite Gelenkelement (18) belasten und angeordnet sind zwischen
dem Klemmelement (26) und dem mindestens einen Gleitstück (36), um die Reibungseinrichtung
mittels der Bewegung des Klemmelements zwischen der ersten Ruhestellung und der zweiten
Arbeitsstellung einzustellen,
dadurch gekennzeichnet, dass die Federmittel und das Gleitstück im Inneren des Klemmelements gehäust und geführt
sind.
2. Stützkopf nach Anspruch 1, bei dem das Gelenk ein Kugelgelenk ist und das erste Gelenkelement
(3) einen kugelförmigen Sitz (17) aufweist, um ein das zweite Gelenkelement bildendes
sphärische Kugelelement (18) aufzunehmen.
3. Stützkopf nach einem der vorhergehenden Ansprüche, bei dem das Klemmelement an einem
seiner Enden nahe dem zweiten Gelenkelement eine becherförmige Struktur (27) aufweist,
in der die Federmittel und das Gleitstück gehäust und geführt sind.
4. Stützkopf nach einem der vorhergehenden Ansprüche, bei dem das Gleitstück aus einem
Werkstoff mit geringem Reibungskoeffizienten gefertigt ist.
5. Stützkopf nach Anspruch 4, bei dem das Gleitstück aus einem Polymermaterial auf PTFE-Basis
oder PTFE enthaltend gefertigt ist.
6. Stützkopf nach einem der vorhergehenden Ansprüche, bei dem das Klemmelement zumindest
auf einer in Berührung mit dem zweiten Gelenkelement stehenden Berührfläche aus Aluminium
gefertigt ist.
7. Stützkopf nach einem der vorhergehenden Ansprüche, bei dem das Klemmelement (26) mit
relativem axialen Bewegungsspiel in einem an dem Körper gelagerten Knopf (30) sitzt,
um in Bezug auf den Knopf frei drehbar zu sein und dadurch das Klemmelement zwischen
der ersten und der zweiten Stellung durch Drehen des Knopfs zu bewegen.
8. Stützkopf nach einem der vorhergehenden Ansprüche, der eine Einrichtung (4) zum Begrenzen
des Hubs des Klemmelements aufweist, welche ein Kontaktelement (41) besitzt, die in
Berührung mit dem Klemmelement bringbar ist, um die erste Ruhestellung zu definieren.
9. Stützkopf nach Anspruch 8, bei dem das Kontaktelement (41) eine Form ähnlich einer
becherförmigen Struktur (27) des Klemmelements (26) aufweist und in Berührung mit
dem zweiten Gelenkelement bringbar ist, um die Becherstruktur während ihrer Bewegung
zwischen der ersten und der zweiten Stellung im Inneren des Kontaktelements aufgenommen
und geführt wird.
10. Stützkopf nach Anspruch 9, bei dem das Kontaktelement ein Loch (43) aufweist, welches
von einem Steuerstift (28) des Klemmelements durchsetzt wird, welcher die Becherstruktur
(27) zwischen der ersten und der zweiten Stellung bewegen kann.
11. Stützkopf nach den Ansprüchen 7 und 10, bei dem der Steuerstift eingesetzt ist durch
Einschrauben in das Loch und innerhalb des Knopfs in der Weise aufgenommen ist, dass
eine Drehung des Knopfs einer Bewegung des Steuerstifts in der durch die erste und
die zweite Stellung definierten Richtung entspricht.
12. Stützkopf nach einem der Ansprüche 8 bis 11, bei dem die Lage des Kontaktelements
in der durch die erste und die zweite Stellung definierten Richtung einstellbar ist.
13. Stützkopf nach Anspruch 12, bei dem die Lage des Kontaktelements mit Hilfe einer auf
das erste Gelenkelement aufgeschraubten Ringmutter (44) bewegt werden kann.
14. Stützkopf nach Anspruch 13, bei dem die Ringmutter bei möglicher freier Drehung an
dem Knopf gehalten ist.
15. Stützkopf nach einem der Ansprüche 8 bis 11, bei dem das Kontaktelement in Relation
zu dem ersten Gelenkelement fixiert ist und die Hubbegrenzungseinrichtung einen Anschlagstift
(104) aufweist, der an dem Knopf angeordnet und relativ zu diesem bewegbar ist, um
in einer gewünschten Stellung zwischen der ersten und der zweiten Stellung mit dem
Steuerstift (28) in Berührung zu treten.
16. Stützkopf nach Anspruch 15, bei dem der Anschlagstift in den Knopf in der durch die
erste und die zweite Stellung definierten Richtung eingeschraubt ist.
1. Tête de support ajustable (1) pour un équipement optique ou vidéo/photographique comprenant
:
un joint (5) comprenant un premier (3) et un deuxième (18) élément de joint ;
un corps (3) définissant ledit premier élément de joint ;
une plaque de raccordement (4) pour ledit équipement optique ou vidéo/photographique,
raccordée audit deuxième élément de joint, afin de permettre de régler librement ladite
plaque de raccordement par rapport audit corps ;
des moyens de verrouillage (25) montés sur ledit corps et comprenant un élément de
serrage (26) qui peut être sélectivement déplacé entre une première position non opérationnelle
dans laquelle l'élément de serrage est à distance dudit deuxième élément de joint
et une deuxième position opérationnelle dans laquelle l'élément de serrage est en
contact avec ledit deuxième élément de joint afin de verrouiller ledit deuxième élément
de joint dans la position souhaitée par rapport audit premier élément de joint ;
des moyens de friction ajustables (35) montés sur ledit corps (3) et comprenant au
moins une glissière (36) placée en contact avec ledit deuxième élément de joint (18)
afin d'ajuster le coulissement dudit deuxième élément de joint par rapport audit premier
élément de joint ;
dans laquelle lesdits moyens de friction comprennent des moyens élastiques (37) chargeant
ladite au moins une glissière contre ledit deuxième élément de joint (18) et intercalés
entre ledit élément de serrage (26) et ladite au moins une glissière (36) afin d'ajuster
lesdits moyens de friction au moyen dudit mouvement dudit élément de serrage entre
ladite première position non opérationnelle et ladite deuxième position opérationnelle,
et en ce que lesdits moyens élastiques et ladite glissière sont logés et guidés à
l'intérieur dudit élément de serrage.
2. Tête de support selon la revendication 1, dans laquelle ledit joint est un joint à
billes et ledit premier élément de joint (3) comprend un siège sphérique (17) pour
loger un élément de bille sphérique (18) formant ledit deuxième élément de joint.
3. Tête de support selon l'une quelconque des revendications précédentes, dans laquelle
ledit élément de serrage comprend, au niveau de l'une de ses extrémités à proximité
dudit deuxième élément de joint, une formation en forme de coupelle (27) dans laquelle
sont logés et guidés lesdits éléments élastiques et ladite glissière.
4. Tête de support selon l'une quelconque des revendications précédentes, dans laquelle
ladite glissière est fabriquée avec un matériau qui présente un faible coefficient
de friction.
5. Tête de support selon la revendication 4, dans laquelle ladite glissière est fabriquée
avec un polymère à base de PTFE ou contenant du PTFE.
6. Tête de support selon l'une quelconque des revendications précédentes, dans laquelle
ledit élément de serrage, au moins sur une surface de contact avec ledit deuxième
élément de joint, est réalisé à partir d'aluminium.
7. Tête de support selon l'une quelconque des revendications précédentes, dans laquelle
ledit élément de serrage (26) est mis en prise avec la possibilité d'un mouvement
axial relatif, dans un bouton (30) monté sur ledit corps afin de tourner librement
par rapport à ce dernier, afin de déplacer ledit élément de serrage entre lesdites
première et deuxième positions en faisant tourner ledit bouton.
8. Tête de support selon l'une quelconque des revendications précédentes, qui a des moyens
(4) pour limiter le déplacement dudit élément de serrage comprenant un élément de
contact (41) pouvant venir en contact avec ledit élément de serrage, afin de définir
ladite première position non opérationnelle.
9. Tête de support selon la revendication 8, dans laquelle ledit élément de contact (41)
a une forme similaire à une formation en forme de coupelle (27) de l'élément de serrage
(26) pouvant venir en contact avec ledit deuxième élément de joint de sorte que ladite
formation en forme de coupelle, pendant son mouvement entre ladite première et ladite
deuxième position, est logée et guidée à l'intérieur dudit élément de contact.
10. Tête de support selon la revendication 9, dans laquelle ledit élément de contact a
un trou (43) traversé par une broche de commande (28) dudit élément de serrage, pouvant
déplacer ladite formation de coupelle (27) entre lesdites première et deuxième positions.
11. Tête de support selon les revendications 7 et 10, dans laquelle ladite broche de commande
est mise en prise par vissage dans ledit trou et est mise en prise dans ledit bouton
de sorte qu'une rotation dudit bouton corresponde à un mouvement de ladite broche
de commande dans la direction définie par lesdites première et deuxième positions.
12. Tête de support selon l'une quelconque des revendications 8 à 11, dans laquelle la
position dudit élément de contact dans la direction définie par lesdites première
et deuxième positions est ajustable.
13. Tête de support selon la revendication 12, dans laquelle ladite position dudit élément
de contact peut être déplacée au moyen d'un écrou annulaire (44) mis en prise par
vissage sur ledit premier élément de joint.
14. Tête de support selon la revendication 13, dans laquelle ledit écrou annulaire est
retenu, avec la possibilité de rotation libre relative, sur ledit bouton.
15. Tête de support selon l'une quelconque des revendications 8 à 11, dans laquelle ledit
élément de contact est fixe par rapport audit premier élément de joint et lesdits
moyens de limitation de déplacement comprennent une broche de butée (104) mise en
prise sur ledit bouton et mobile par rapport à ces derniers pour venir en contact
avec ladite broche de commande (28) dans une position souhaitée entre lesdites première
et deuxième positions.
16. Tête de support selon la revendication 15, dans laquelle ladite broche de butée est
mise en prise par vissage sur ledit bouton dans la direction définie par lesdites
première et deuxième positions.